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首页> 外文期刊>The journal of clinical investigation >FOXC2 and fluid shear stress stabilize postnatal lymphatic vasculature
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FOXC2 and fluid shear stress stabilize postnatal lymphatic vasculature

机译:FOXC2和液体剪切应力可稳定出生后的淋巴管

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Biomechanical forces, such as fluid shear stress, govern multiple aspects of endothelial cell biology. In blood vessels, disturbed flow is associated with vascular diseases, such as atherosclerosis, and promotes endothelial cell proliferation and apoptosis. Here, we identified an important role for disturbed flow in lymphatic vessels, in which it cooperates with the transcription factor FOXC2 to ensure lifelong stability of the lymphatic vasculature. In cultured lymphatic endothelial cells, FOXC2 inactivation conferred abnormal shear stress sensing, promoting junction disassembly and entry into the cell cycle. Loss of FOXC2-dependent quiescence was mediated by the Hippo pathway transcriptional coactivator TAZ and, ultimately, led to cell death. In murine models, inducible deletion of Foxc2 within the lymphatic vasculature led to cell-cell junction defects, regression of valves, and focal vascular lumen collapse, which triggered generalized lymphatic vascular dysfunction and lethality. Together, our work describes a fundamental mechanism by which FOXC2 and oscillatory shear stress maintain lymphatic endothelial cell quiescence through intercellular junction and cytoskeleton stabilization and provides an essential link between biomechanical forces and endothelial cell identity that is necessary for postnatal vessel homeostasis. As FOXC2 is mutated in lymphedema-distichiasis syndrome, our data also underscore the role of impaired mechanotransduction in the pathology of this hereditary human disease.
机译:生物力学力(例如流体剪切应力)控制着内皮细胞生物学的多个方面。在血管中,血流紊乱与诸如动脉粥样硬化的血管疾病有关,并促进内皮细胞增殖和凋亡。在这里,我们确定了淋巴管内血流紊乱的重要作用,其中它与转录因子FOXC2协同作用以确保淋巴管的终生稳定性。在培养的淋巴管内皮细胞中,FOXC2失活赋予异常的切应力感测,促进连接解体并进入细胞周期。 HOX途径转录共激活因子TAZ介导了FOXC2依赖性静止的丧失,并最终导致细胞死亡。在鼠模型中,淋巴管系统中Foxc2的诱导型缺失导致细胞间连接缺陷,瓣膜消退和局灶性血管腔塌陷,从而引发广泛的淋巴管功能障碍和致死性。在一起,我们的工作描述了一种基本机制,FOXC2和振荡剪切应力通过细胞间连接和细胞骨架稳定来维持淋巴管内皮细胞的静止,并提供了生物力学力与内皮细胞特性之间的必要联系,这是产后血管稳态所必需的。由于FOXC2在淋巴水肿-双歧杆菌综合征中发生突变,因此我们的数据还强调了机械转导受损在这种遗传性人类疾病的病理中的作用。

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